4.8 Article

Combined Magnetic Imaging and Anisotropic Magnetoresistance Detection of Dipolar Skyrmions

期刊

ADVANCED FUNCTIONAL MATERIALS
卷 33, 期 4, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.202207770

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anisotropic magnetoresistance; electrical detections; real-space magnetic imaging; single skyrmion chain

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Real-space magnetic imaging and anisotropic magnetoresistance studies on dipolar skyrmions were conducted. The study found that the anisotropic magnetoresistance of skyrmions is proportional to the skyrmion count and independent of the helicity. This research promotes read-out operations in skyrmion-based spintronic devices.
Magnetic skyrmions are localized particle-like nontrivial swirls that are promising in building high-performance topological spintronic devices. The read-out functions in skyrmionic devices require the translation of magnetic skyrmions to electrical signals. Here, combined real-space magnetic imaging and anisotropic magnetoresistance studies on dipolar skyrmions are reported. A single skyrmion chain and single skyrmion are observed using Lorentz transmission electron microscopy imaging. Meanwhile, the field, helicity, and skyrmion count dependence of anisotropic magnetoresistance of the Fe3Sn2 nanostructures are obtained simultaneously. These results demonstrate that the anisotropic magnetoresistance of skyrmions is independent of the helicity and proportional to the skyrmion count. This study promotes read-out operations in skyrmion-based spintronic devices.

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